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首页> 外文期刊>Optical Materials >Green coordination chemistry as a novel approach to fabricate polymer: Cd (Ⅱ)-complex composites: Structural and optical properties
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Green coordination chemistry as a novel approach to fabricate polymer: Cd (Ⅱ)-complex composites: Structural and optical properties

机译:绿色协调化学作为一种制造聚合物的新方法:CD(Ⅱ) - 录取复合材料:结构和光学性能

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摘要

In the present work black tea leaves extract solution as a novel green coordination method was used to synthesis cadmium metal ions-complexes (Cd2+-polyphenol complex) with enhanced absorption in UV–vis region. The Cd2+-polyphenol complexes were mixed with poly (vinyl alcohol) (PVA) to fabricate composite films with tunable optical properties. The construction of direct band gap (DBG) polymer composites with developed amorphous phase is vital for applications in optoelectronic devices. The Cd2+-polyphenol complexes and composite films were characterized using X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FTIR), and UV–Vis spectroscopy. The outcomes indicate that the interaction between Cd+2 ions and polyphenols can create Cd2+-polyphenol complex. It is displayed by the XRD findings that the synthesized Cd2+-polyphenol complexes are amorphous structure. The analysis of XRD deconvolution shows a development of amorphous nature of PVA with Cd2+-polyphenol complex insertion. The FTIR results exhibit the occurrence of complexation between PVA and Cd2+-polyphenol complex. From UV–Vis spectroscopy study, the optical parameters (absorption edge, refractive index (n), dielectric constant (εr), dielectric loss (εi), and band gap energy (Eg)) of pure PVA and composite films were measured. Examination of the εi optical parameter is carried out in order to measure the Eg, while kinds of electronic transition in the films are determined based on the Tauc's method.
机译:在本工作中,红茶叶子提取物作为一种新型绿色配位方法,用于合成镉金属离子 - 配合物(CD2 + -Polyphenol络合物),在UV-Vis区的增强吸收中。将CD2 + -Polyphenol络合物与聚(乙烯醇)(PVA)混合以制造具有可调谐光学性质的复合膜。具有发育非晶相的直接带隙(DBG)聚合物复合材料的构建对于光电器件中的应用至关重要。使用X射线衍射(XRD),傅里叶变换红外光谱(FTIR)和UV-Vis光谱,表征CD2 + -Polyphenol络合物和复合膜。结果表明CD + 2离子和多酚之间的相互作用可以产生CD2 + - 聚合物复合物。它由XRD发现显示,合成的CD2 + -Polyphenol络合物是无定形结构。 XRD去卷积分析显示了PVA与CD2 + -Polyphenol复合物插入的非晶性的发展。 FTIR结果表现出PVA和CD2 + -Polyphenol络合物之间的络合的发生。从UV-Vis光谱研究,测量光学参数(吸收边缘,折射率(N),纯PVA和复合膜的介电常数(εr),介电常数(εr),介电损耗(例如))。对εi光学参数进行检查以测量例如膜中的各种电子转换,基于Tauc的方法确定。

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  • 来源
    《Optical Materials》 |2021年第6期|111062.1-111062.12|共12页
  • 作者单位

    Department of Manufacturing and Materials Engineering Faculty of Engineering International Islamic University of Malaysia Kuala Lumpur Gombak 53100 Malaysia|Advanced Polymeric Materials Research Lab. Department of Physics College of Science University of Sulaimani Qlyasan Street Sulaimani 46001 Iraq;

    Advanced Polymeric Materials Research Lab. Department of Physics College of Science University of Sulaimani Qlyasan Street Sulaimani 46001 Iraq|Department of Civil Engineering College of Engineering Komar University of Science and Technology Sulaimani 46001 Kurdistan Regional Government Iraq;

    Department of Manufacturing and Materials Engineering Faculty of Engineering International Islamic University of Malaysia Kuala Lumpur Gombak 53100 Malaysia;

    Department of Biotechnology Engineering Faculty of Engineering International Islamic University of Malaysia Kuala Lumpur Gombak 53100 Malaysia;

    Associate Director of General Sciences Department Woman Campus Prince Sultan University P. O. Box 66833 Riyadh 11586 Saudi Arabia;

    Charmo Research Center Charmo University Peshawa Street Chamchamal Sulaimani Kurdistan Region Iraq;

    Department of Chemistry College of Science University of Sulaimani Qlyasan Street Sulaimani 46001 Iraq;

    Advanced Polymeric Materials Research Lab. Department of Physics College of Science University of Sulaimani Qlyasan Street Sulaimani 46001 Iraq;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cd+2-polyphenol complex; Extract tea solution; Optical properties; Polyphenols; PVA polymer; UV–Vis study; XRD and FTIR studies;

    机译:CD + 2-多酚复合物;提取茶溶液;光学性质;多酚;PVA聚合物;UV-VIS研究;XRD和FTIR研究;

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